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纳米TiO颗粒催化乙酰丙酸酯化制备生物燃料乙酰丙酸正丁酯

Catalytic Esterification of Levulinic Acid into the Biofuel n-Butyl Levulinate over Nanosized TiO Particles.

作者信息

Zhou Shuolin, Wu Lu, Bai Junzhuo, Lei Min, Long Min, Huang Keying

机构信息

School of Elementary Education, Changsha Normal University, Changsha 410100, China.

出版信息

Nanomaterials (Basel). 2022 Nov 2;12(21):3870. doi: 10.3390/nano12213870.

Abstract

Levulinic esters, synthesized by the esterification of biomass-derived levulinic acid with various alcohols, is an important chemical that plays an essential role in the fields of biomass fuel additives, organic synthesis, and high value-added products. In the present work, the catalytic esterification of levulinic acid with n-butyl alcohol was selected as a typical model reaction to investigate the catalytic performance of an inexpensive commercial catalyst, titanium oxide nanoparticles. The influences of reaction time, reaction temperature, and catalyst loading on the conversion of levulinic acid to n-butyl levulinate were systematically examined through single-factor experiments. Additionally, the optimization of the reaction conditions was further investigated by a Box-Behnken design in response to the surface methodology. The desired product, n-butyl levulinate, with a good yield (77.6%) was achieved under the optimal conditions (reaction time of 8 h, reaction temperature of 120 °C, and catalyst dosage of 8.6 wt.%) when using titanium oxide nanoparticles as catalysts. Furthermore, it was found that addition of water to the catalytic system facilitated the reaction process, to some extent. This study reveals that the nanosized TiO material as an efficient solid acid catalyst, had good catalytic performance and stability for the esterification of levulinic acid after six consecutive uses.

摘要

通过生物质衍生的乙酰丙酸与各种醇进行酯化反应合成的乙酰丙酸酯,是一种重要的化学品,在生物质燃料添加剂、有机合成和高附加值产品领域发挥着重要作用。在本工作中,选择乙酰丙酸与正丁醇的催化酯化反应作为典型模型反应,以研究一种廉价的商业催化剂——纳米二氧化钛的催化性能。通过单因素实验系统地考察了反应时间、反应温度和催化剂用量对乙酰丙酸转化为乙酰丙酸正丁酯转化率的影响。此外,采用Box-Behnken设计响应面法进一步研究了反应条件的优化。当使用纳米二氧化钛作为催化剂时,在最佳条件下(反应时间8 h、反应温度120℃、催化剂用量8.6 wt.%)可获得产率良好(77.6%)的目标产物乙酰丙酸正丁酯。此外,还发现向催化体系中加入水在一定程度上促进了反应过程。本研究表明,纳米TiO材料作为一种高效的固体酸催化剂,在连续使用六次后对乙酰丙酸酯化反应仍具有良好的催化性能和稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9eee/9656612/8c3105e71a9f/nanomaterials-12-03870-g001.jpg

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